Anomalous fluid emission of a deep borehole in a seismically active area of Northern Apennines (Italy) (Articolo in rivista)

Type
Label
  • Anomalous fluid emission of a deep borehole in a seismically active area of Northern Apennines (Italy) (Articolo in rivista) (literal)
Anno
  • 2010-01-01T00:00:00+01:00 (literal)
Alternative label
  • Heinicke J, Italiano F, Koch U, Martinelli G, Telesca L. (2010)
    Anomalous fluid emission of a deep borehole in a seismically active area of Northern Apennines (Italy)
    in Applied geochemistry
    (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#autori
  • Heinicke J, Italiano F, Koch U, Martinelli G, Telesca L. (literal)
Pagina inizio
  • 555 (literal)
Pagina fine
  • 571 (literal)
Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#numeroVolume
  • 25 (literal)
Rivista
Note
  • ISI Web of Science (WOS) (literal)
Titolo
  • Anomalous fluid emission of a deep borehole in a seismically active area of Northern Apennines (Italy) (literal)
Abstract
  • The Miano borehole, 1047 m deep, is located close to the river Parma in the Northern Apennines, Italy. A measuring station has been installed to observe the discharge of fluids continuously since November 2004. The upwelling fluid of this artesian well is a mixture of thermal water and CH4 as main components. In non-seismogenic areas, a relatively constant fluid emission would be expected, perhaps overlaid with long term variations from that kind of deep reservoir over time. However, the continuous record of the fluid emission, in particular the water discharge, the gas flow rate and the water temperature, show periods of stable values interrupted by anomalous periods of fluctuations in the recorded parameters. The anomalous variations of these parameters are of low amplitude in comparison to the total values but significant in their long-term trend. Meteorological effects due to rain and barometric pressure were not detected in recorded data probably due to reservoir depth and relatively high reservoir overpressure. Influences due to the ambient temperature after the discharge were evaluated by statistical analysis. Our results suggest that recorded changes in fluid emission parameters can be interpreted as a mixing process of different fluid components at depth by variations in pore pressure as a result of seismogenic stress variation. Local seismicity was analyzed in comparison to the fluid physico-chemical data. The analysis supports the idea that an influence on fluid transport conditions due to geodynamic processes exists. Water temperature data show frequent anomalies probably connected with possible precursory phenomena of local seismic events. (literal)
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